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D-STATCOM for a Distribution Network with Distributed PV Generation

机译:D-STATCOM,用于分布式光伏发电的配电网络

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Power quality in an AC power distribution system is reduced by nonlinear loads which draw non-sinusoidal current. When this distorted current interacts with the line impedance of the distribution network (the grid), the system voltage becomes distorted which could adversely affect other electrical devices connected to the grid. In the traditional grid, this is compensated at the substation by the utility. Adding PV into the distribution system can complicate the situation when power flow reverses due to excess generation resulting in back-feeding into the grid. It has been proposed that the photovoltaic inverter should actively improve the power quality by compensating harmonic and reactive current. However, this adds complexity and cost to the inverter as well as reduces the inverter reliability. To maintain high power quality in the distribution system, it is necessary to develop a means to compensate for the reactive and harmonic currents locally. This paper investigates the use of a distribution static synchronous compensator (D-STATCOM) for harmonic power compensation in a distribution network. The proposed topology is based on a matrix converter topology (MC) which is controlled using model predictive control (MPC) which enables inductive energy storage instead of requiring electrolytic capacitors that have well-known failure modes. Compensating the harmonic current in the distribution system improves the overall reliability of the grid. Simulation is performed using MATLAB/Simulink to investigate the performance and capability. It is envisioned that the device can be deployed and dispatched by the utility as needed in the distribution network to prevent upstream-propagation of the harmonic current, which could lead to transformer overheating and other deleterious effects.
机译:交流配电系统中的电能质量会因吸收非正弦电流的非线性负载而降低。当此失真的电流与配电网络(电网)的线路阻抗相互作用时,系统电压就会失真,这可能会对连接到电网的其他电气设备产生不利影响。在传统电网中,公用事业部门会在变电站中对此进行补偿。当光伏发电由于过量发电而导致反向发电而导致反向馈电时,将光伏技术添加到配电系统会使情况变得更加复杂。已经提出,光伏逆变器应通过补偿谐波和无功电流来积极地改善电能质量。但是,这增加了逆变器的复杂性和成本,并且降低了逆变器的可靠性。为了在配电系统中保持较高的电能质量,有必要开发一种手段来局部补偿无功电流和谐波电流。本文研究了使用配电静态同步补偿器(D-STATCOM)进行配电网络中的谐波功率补偿。拟议的拓扑基于矩阵转换器拓扑(MC),该矩阵使用模型预测控制(MPC)进行控制,该模型能够实现感应能量存储,而不需要具有众所周知故障模式的电解电容器。补偿配电系统中的谐波电流可提高电网的整体可靠性。使用MATLAB / Simulink执行仿真以研究性能和功能。可以设想,公用事业可以根据需要在配电网中部署和调度该设备,以防止谐波电流向上游传播,这可能导致变压器过热和其他有害影响。

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